1 |
杨兴云,乔丹丹,张雅洁,等.鸭茅响应水淹胁迫的miRNA差异表达分析[J].草业学报,2022,31(6): 150-162.
|
|
YANG X Y, QIAO D D, ZHANG Y J,et al.A differential gene expression analysis of miRNA in dactylis glomerata in response to flooding stress[J].Acta Prataculturae Sinica,2022,31(6):150-162.
|
2 |
ABIKO T, KOTULA L, SHIONO K,et al.Enhanced formation of aerenchyma and induction of a barrier to radial oxygen loss in adventitious roots of zea nicaraguensis contribute to its waterlogging tolerance as compared with maize (Zea mays ssp.mays)[J].Plant,Cell & Environment,2012,35(9):1618-1630.
|
3 |
BAILEY-SERRES J, LEE S C, BRINTON E.Waterproofing crops:effective flooding survival strategies[J].Plant Physiology,2012,160(4):1698-1709.
|
4 |
BOULANGE J, HANASAKI N, YAMAZAKI D,et al.Role of dams in reducing global flood exposure under climate change[J].Nature Communication,2021,12(1):417.
|
5 |
BAILEY-SERRES J, VOESENEK L A C J.Flooding stress:acclimations and genetic diversity[J].Annual Review of Plant Biology,2008,59:313-339.
|
6 |
NAGAI K, MORI Y, ISHIKAWA S,et al.Antagonistic regulation of the gibberellic acid response during stem growth in rice[J].Nature,2020,584(7819):109-114.
|
7 |
NAGAI K, HATTORI Y, ASHIKARI M.Stunt or elongate? Two opposite strategies by which rice adapts to floods[J].Journal of Plant Research,2010,123(3):303-309.
|
8 |
NIROULA R K, PUCCIARIELLO C, HO V T,et al.SUB1A-dependent and -independent mechanisms are involved in the flooding tolerance of wild rice species[J].The Plant Journal,2012,72(2):282-293.
|
9 |
COLLARD B C Y, SEPTININGSIH E M, DAS S R,et al.Developing new flood-tolerant varieties at the international rice research institute(IRRI)[J].SABRAO Journal of Breeding and Genetics,2013,45(1):42-56.
|
10 |
JIA W T, MA M H, CHEN J L,et al.Plant morphological,physiological and anatomical adaption to flooding stress and the underlying molecular mechanisms[J].International Journal of Molecular Sciences,2021,22(3):1088.
|
11 |
STEFFENS B, RASMUSSEN A.The physiology of adventitious roots[J].Plant Physiology,2016,170(2):603-617.
|
12 |
SAUTER M.Root responses to flooding[J].Current Opinion in Plant Biology,2013,16(3):282-286.
|
13 |
YAMAUCHI T, TANAKA A, TSUTSUMI N,et al.A role for auxin in ethylene-dependent inducible aerenchyma formation in rice roots[J].Plants(Basel),2020,9(5):610
|
14 |
BLOKHINA O, FAGERSTEDT K V.Oxidative metabolism,ROS and NO under oxygen deprivation[J].Plant Physiology and Biochemistry,2010,48(5):359-373.
|
15 |
CHOUDHURY F K, RIVERO R M, BLUMWALD E,et al.Reactive oxygen species,abiotic stress and stress combination[J].The Plant Journal,2017,90(5):856-867.
|
16 |
SASIDHARAN R, HARTMAN S, LIU Z G,et al.Signal dynamics and interactions during flooding stress[J].Plant Physiology,2018,176(2):1106-1117.
|
17 |
APEL K, HIRT H.Reactive oxygen species:metabolism,oxidative stress,and signal transduction[J].Annual Review of Plant Biology,2004,55:373-399.
|
18 |
尹婷辉,林瑞君,孙林,等.华南22种园林植物耐涝性筛选[J].浙江林业科技,2022,42(1):31-40.
|
|
YIN T H, LIN R J, SUN L,et al.Experiment on waterlogging stress of 22 garden plant species in Shenzhen[J].Journal of Zhejiang Forestry Science and Technology,2022,42(1):31-40.
|
19 |
SASIDHARAN R, VOESENEK L A C J.Ethylene-mediated acclimations to flooding stress[J].Plant Physiology,2015,169(1):3-12.
|
20 |
姜玉萍,郝婷,张兆辉,等.淹水对不同蔬菜生长和光合作用的影响[J].上海农业学报,2013,29(5):97-100.
|
|
JIANG Y P, HAO T, ZHANG Z H,et al.Effects of waterlogging on growth and photosynthesis of 3 vegetable crops[J].Acta Agriculturae Shanghai,2013,29(5):97-100.
|
21 |
刘聪聪,兰超杰,李欢,等.樱桃番茄苗期对淹水胁迫的响应及其耐涝性评价[J].核农学报,2020,34(3):650-660.
|
|
LIU C C, LAN C J, LI H,et al.Responses of waterlogging stress and evaluation of waterlogging tolerance in cherry tomato at seedling stage[J].Journal of Nuclear Agricultural Sciences,2020,34(3):650-660.
|
22 |
郑积荣,汪炳良,王慧俐.番茄多茸毛性状的遗传研究及其利用价值[J].江西农业学报,2010,22(6):61-64.
|
|
ZHENG J R, WANG B L, WANG H L.Study on inheritance of hairy trait of tomato and its value in tomato breeding[J].Acta Agriculturae Jiangxi,2010,22(6):61-64.
|
23 |
WU J Q, CHENG J, XU C M,et al.AUREA maintains the balance between chlorophyll synthesis and adventitious root formation in tomato[J].Horticulture Research,2020,7(1):166.
|
24 |
RASHEED R, IQBAL M, ASHRAF M A,et al.Glycine betaine counteracts the inhibitory effects of waterlogging on growth,photosynthetic pigments,oxidative defence system,nutrient composition,and fruit quality in tomato[J].The Journal of Horticultural Science and Biotechnology,2018,93(4):385-391.
|
25 |
HARTMAN S, VAN DONGEN N, RENNEBERG D M H J,et al.Ethylene differentially modulates hypoxia responses and tolerance across solanum species[J].Plants,2020,9(8):1022.
|
26 |
KLAY I, GOUIA S, LIU M C,et al.Ethylene Response Factors (ERF) are differentially regulated by different abiotic stress types in tomato plants[J].Plant Science,2018,274:137-145.
|
27 |
张小莉,王鹏程,宋纯鹏.植物细胞过氧化氢的测定方法[J].植物学报,2009,44(1):103-106.
|
|
ZHANG X L, WANG P C, SONG C P.Methods of detecting hydrogen peroxide in plant cells[J].Chinese Bulletin of Botany,2009,44(1):103-106.
|
28 |
聂功平,陈敏敏,杨柳燕,等.植物响应淹水胁迫的研究进展[J].中国农学通报,2021,37(18):57-64.
|
|
NIE G P, CHEN M M, YANG L Y,et al.Plant response to waterlogging stress:research progress[J].Chinese Agricultural Science Bulletin,2021,37(18):57-64.
|
29 |
COLMER T D, VOESENEK L A C J.Flooding tolerance:suites of plant traits in variable environments[J].Functional Plant Biology,2009,36(8):665-681.
|
30 |
VOESENEK L A C J, BAILEY-SERRES J.Flood adaptive traits and processes:an overview[J].New Phytologist,2015,206(1):57-73.
|
31 |
JIA L T, QIN X, LYU D G,et al.ROS production and scavenging in three cherry rootstocks under short-term waterlogging conditions[J].Scientia Horticulturae,2019,257:108647.
|
32 |
常二梅,史胜青,刘建锋,等.古侧柏针叶活性氧产生及其清除机制[J].东北林业大学学报,2011,39(11):8-11.
|
|
CHANG E M, SHI S Q, LIU J F,et al.ROS production and its elimination in old platycladus orientalis’s leaves[J].Journal of Northeast Forestry University,2011,39(11):8-11.
|
33 |
李博书,陈晶,杨亮,等.干旱胁迫对不同生育时期大豆叶片抗氧化酶活性的影响[J].大豆科技,2022(3):12-17.
|
|
LI B S, CHEN J, YANG L,et al.Effects of drought stress on antioxidant enzymes activities in soybean leaves at different growth stages[J].Soybean Science & Technology,2022(3):12-17.
|
34 |
刘聪聪,兰超杰,李欢,等.淹水胁迫及恢复对樱桃番茄苗期根系和叶片细胞膜稳定性的影响[J].灌溉排水学报,2022,41(9):61-70.
|
|
LIU C C, LAN C J, LI H,et al.Effects of flooding stress and recovery on root and leaf cell membrane stability at cherry tomato seedlings[J].Journal of Irrigation and Drainage,2022,41(9):61-70.
|
35 |
刘江,李明倩,常峻菲,等.干旱胁迫及复水对大豆关键生育时期叶片生理特性的影响[J].中国农业气象,2022,43(8):622-632.
|
|
LIU J, LI M Q, CHANG J F,et al.Physiological characteristics of soybean leaves at different growth stages[J].Chinese Journal of Agrometeorology,2022,43(8):622-632.
|