Evaluating drought stress tolerance in different Camellia sinensis L. cultivars and effect of melatonin on strengthening antioxidant system

IK Langaroudi, S Piri, SS Chaeikar, B Salehi - Scientia Horticulturae, 2023 - Elsevier
Drought stress really restring the growth and development of tea plant and affecting quality
and yield. In tea growing areas of Iran, drought stress is a serious problem that affects the …

Understanding Camellia sinensis using Omics Technologies along with Endophytic Bacteria and Environmental Roles on Metabolism: A Review

PP Tshikhudo, K Ntushelo, FN Mudau, B Salehi… - Applied Sciences, 2019 - mdpi.com
Camellia sinensis is the most consumed beverage worldwide. It contains a wide variety of
secondary metabolites, such as alkaloids, saponins, tannins, catechins, and polyphenols …

Changes in growth, biochemical, and chemical characteristics and alteration of the antioxidant defense system in the leaves of tea clones (Camellia sinensis L.) under …

SS Chaeikar, S Marzvan, SJ Khiavi, M Rahimi - Scientia Horticulturae, 2020 - Elsevier
In this study, we measured the morphological, biochemical, and chemical responses to soil
drying in nine tea clones [Camellia sinensis (L.) O. Kuntze] grown in a field. Thirteen-year …

Physiological and biochemical response of tea [Camellia sinensis (L.) O. Kuntze] to water-deficit stress

TK Maritim, SM Kamunya, P Mireji… - The Journal of …, 2015 - Taylor & Francis
A study to determine the physiological and biochemical responses of eight tea [Camellia
sinensis (L.) O. Kuntze] cultivars to water-deficit stress was conducted in a 'rain-out …

[图书][B] Breeding and biotechnology of tea and its wild species

TK Mondal - 2014 - books.google.com
Tea is an important non-alcoholic beverage plant of the world. Cultivation of tea is very
important as it earns revenue for the tea growing nations especially the developing countries …

[PDF][PDF] Physiological mechanisms and genetic factors of the tea plant Camellia sinensis (L.) Kuntze response to drought

LS Samarina, AV Ryndin, LS Malyukova… - Sel' …, 2019 - agrobiology.ru
A bstract The main constraint in the tea plants growth in the world is drought, which reduces
the productivity of plantations by 15-45%(RM Bhagat et al., 2010; RD Baruah et al., 2012). In …

茶树异胡豆苷合成酶基因的全基因组鉴定和表达分析

周棋赢, 姜慧敏, 李拉拉, 袁红雨… - 信阳师范学院学报 …, 2021 - journal.xynu.edu.cn
基于隐马可夫模型检索和序列比对, 从茶树基因组鉴定出17 个异胡豆苷合成酶(Strictosidine
synthase, STR) 基因(CsSTR1~ 17). 理化分析表明, CsSTR 蛋白长度在147~ 552 …

Alterations in growth, photosynthetic activity and tissue-water relations of tea clones in response to different soil moisture content

JM Rawat, B Rawat, A Tewari, SC Joshi, SK Nandi… - Trees, 2017 - Springer
Key message Significant effect of water stress conditions were observed on morphological
and physiological growth parameters of tea (Camellia sinensis). Water stress tolerant tea …

Current and Future Distribution of Camellia sinensis in China Estimated by MaxEnt

J Chen, Y Yin, W Yu, W Tao, Y Huang, B Zhu - HortScience, 2024 - journals.ashs.org
Tea (Camellia sinensis L.) is an important cash crop. In the context of climate change,
analyzing the current distribution of tea trees and climate change environmental variables to …

О формировании устойчивости у растений чая саmellia sinensis (L.) O. Kuntze при недостаточном водообеспечении на фоне корневого внесения кальция в …

ЛС Малюкова, ЗВ Притула, НВ Козлова… - …, 2016 - cyberleninka.ru
Чайное растение [Саmelliasinensis (L.) O. Kuntze] в условиях Черноморского побережья
России и в ряде других регионов мира (Китай, Индия) сталкивается с сезонными …